正渗透法表征不同厚度醋酸纤维素膜对蔗糖浓度的影响

Q4 Chemical Engineering
A. I. M. Idris, S. M. Mustapa Kamal, A. Sulaiman, R. Omar, Munirah Mohammad
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引用次数: 0

摘要

正向渗透(FO)需要一种特殊的膜结构,用于果汁浓缩等应用。采用相转化法制备了醋酸纤维素(CA) FO膜。溶剂为丙酮和1,4-二恶烷。采用聚乙烯吡咯烷酮(PVP)、甲醇和马来酸等添加剂制备CA膜,使其更容易提高膜的渗透性。在150、200和250µm不同的浇铸厚度下,对制备的FO膜的性能和形貌进行了评价。实验工作从1小时的膜通量测试开始,以去离子水为进料液,1 M NaCl为拉伸液。然后用NaCl浓缩0.5 M蔗糖240分钟(2 M),用接触角、孔隙率和扫描电子显微镜(SEM)表征膜的性质和形貌。铸体厚度为200µm时,水通量高(2.25 L/m2hr),孔隙率高(75.86%)。铸体厚度为200µm时,蔗糖浓度的透水性通量最高,为2.39 L/m2hr。结果还表明,通量值随膜厚的变化而变化。所有膜均为亲水性,接触角均小于90°。根据形貌分析,200µm厚度的铸造膜具有光滑且均匀分布的孔隙。结构参数(S)值与FO膜厚度成正比关系,较薄的膜可能会降低内部浓度极化(ICP)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of Cellulose Acetate Membrane at Different Thicknesses on Sucrose Concentration by Forward Osmosis
Forward osmosis (FO) requires a specific membrane structure for applications like juice concentration. The phase inversion method was used to make cellulose acetate (CA) FO membranes. The solvents used were acetone and 1,4-dioxane. Additives included polyvinylpyrrolidone (PVP), methanol, and maleic acid were used in the preparation of CA membrane, which make it easier to improve a FO membrane's permeability. The performance of fabricated FO membrane and their  morphology were evaluaed with different casting thicknesses of 150, 200, and 250 µm. Experiment works begins with an hour of membrane flux testing, deionized water was used as feed solution and 1 M NaCl as draw solution. The membrane was then used to concentrate 0.5 M sucrose with NaCl for 240 minutes (2 M). Contact angle, porosity, and scanning electron miscroscopy (SEM) were used to characterize membrane properties and morphology. High water flux (2.25 L/m2hr) and high porosity (75.86%) were found at 200 µm casting thickness. Water permeability of sucrose concentration at 200 µm casting thickness had the highest flux (2.39 L/m2hr). The results also show that flux values vary with membrane thickness. All membranes were hydrophilic with contact angles below 90°.  A 200 µm casting thickness produces a membrane with smooth and evenly distributed pores, according to morphology analysis. Structural parameter (S) values had a proportional relationship with the FO membrane thickness, which thinner membrane potentially reduces the internal concentration polarization (ICP).
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来源期刊
ASEAN Journal of Chemical Engineering
ASEAN Journal of Chemical Engineering Chemical Engineering-Chemical Engineering (all)
CiteScore
1.00
自引率
0.00%
发文量
15
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